Pohl M, Wendt M O, Koch B, Vlastos G A
Institute of Medical Physics and Biophysics, University Hospital Charité, Medical Faculty of Humboldt University, Berlin, Germany.
Biorheology. 2000;37(4):313-24.
Human or animal blood is normally used as a test fluid for the in vitro evaluation of hemolysis by artificial organs. However, blood has some disadvantages (large biological variability and problems with cleaning the devices). For that reason, we searched for a reproducible technical fluid with blood-like flow characteristics that exhibits similar shear depending destruction. In this study, a direct comparison between erythrocyte damage of bovine blood and shear-induced degradation of polyacrylamide solution is given. A uniform shear field was applied to the fluids using a shear device with a plate-plate geometry. It was shown that similarities exist between erythrocytes disaggregation and breakdown of super molecular structures in polymer solutions, caused by mechanical stress. In both cases steady low shear viscositity was diminished and the elastic component of complex viscosity of blood and polymer solutions has been reduced. There is a correlation between shear-induced hemolysis of bovine blood and mechanical polymer-degradation, which depends on the applied shear stresses.
人血或动物血通常用作测试液,用于通过人工器官进行体外溶血评估。然而,血液存在一些缺点(生物变异性大以及设备清洁问题)。因此,我们寻找一种具有类似血液流动特性且表现出类似剪切依赖性破坏的可重现技术流体。在本研究中,对牛血的红细胞损伤与聚丙烯酰胺溶液的剪切诱导降解进行了直接比较。使用具有平板几何形状的剪切装置对流体施加均匀剪切场。结果表明,机械应力导致的红细胞解聚与聚合物溶液中超分子结构的破坏之间存在相似性。在这两种情况下,稳定的低剪切粘度均降低了,并且血液和聚合物溶液的复数粘度的弹性成分也降低了。牛血的剪切诱导溶血与聚合物机械降解之间存在相关性,这取决于所施加的剪切应力。